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On the Tempo-Spatial Evolution of the Lower Ionospheric Perturbation for the 2016 Kumamoto Earthquakes from Comparisons of VLF Propagation Data Observed at Multiple Stations with Wave-Hop Theoretical Computations 被引量:2

On the Tempo-Spatial Evolution of the Lower Ionospheric Perturbation for the 2016 Kumamoto Earthquakes from Comparisons of VLF Propagation Data Observed at Multiple Stations with Wave-Hop Theoretical Computations
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摘要 There have been published many papers on VLF (very low frequency) characteristics to study seismo-ionospheric perturbations. Usually VLF records (amplitude and/or phase) are used to investigate mainly the temporal evolution of VLF propagation anomalies with special attention to one particular propagation path. The most important advantage of this paper is the simultaneous use of several propagation paths. A succession of earthquakes (EQs) happened in the Kumamoto area in Kyusyu Island;two strong foreshocks with magnitude of 6.5 and 6.4 on 14 April (UT) and the main shock with magnitude 7.3 on 15 April (UT). Because the EQ epicenters are not far from the VLF transmitter (with the call sign of JJI in Miyazaki prefecture), we can utilize simultaneously 8 observing stations of our network all over Japan. Together with the use of theoretical computations based on wave-hop theory, we try to trace both the temporal and spatial evolutions of the ionospheric perturbation associated with this succession of EQs. It is found that the ionospheric perturbation begins to appear about two weeks before the EQs, and this perturbation becomes most developed 5 - 3 days before the main shock. When the perturbation is most disturbed, the maximum change in vertical direction is depletion in the VLF effective ionospheric height of the order of 10 km, and its horizontal scale (or its radius) is about 1000 km. These spatio-temporal changes of the seismo-ionospheric perturbation will be investigated in details in the discus-sion, a comparison has made with the VLF characteristics of the 1995 Kobe with the same magnitude and of the same fault-type, and a brief discussion on the generation mechanism of seismo-ionospheric perturbation is finally made. There have been published many papers on VLF (very low frequency) characteristics to study seismo-ionospheric perturbations. Usually VLF records (amplitude and/or phase) are used to investigate mainly the temporal evolution of VLF propagation anomalies with special attention to one particular propagation path. The most important advantage of this paper is the simultaneous use of several propagation paths. A succession of earthquakes (EQs) happened in the Kumamoto area in Kyusyu Island;two strong foreshocks with magnitude of 6.5 and 6.4 on 14 April (UT) and the main shock with magnitude 7.3 on 15 April (UT). Because the EQ epicenters are not far from the VLF transmitter (with the call sign of JJI in Miyazaki prefecture), we can utilize simultaneously 8 observing stations of our network all over Japan. Together with the use of theoretical computations based on wave-hop theory, we try to trace both the temporal and spatial evolutions of the ionospheric perturbation associated with this succession of EQs. It is found that the ionospheric perturbation begins to appear about two weeks before the EQs, and this perturbation becomes most developed 5 - 3 days before the main shock. When the perturbation is most disturbed, the maximum change in vertical direction is depletion in the VLF effective ionospheric height of the order of 10 km, and its horizontal scale (or its radius) is about 1000 km. These spatio-temporal changes of the seismo-ionospheric perturbation will be investigated in details in the discus-sion, a comparison has made with the VLF characteristics of the 1995 Kobe with the same magnitude and of the same fault-type, and a brief discussion on the generation mechanism of seismo-ionospheric perturbation is finally made.
出处 《Open Journal of Earthquake Research》 2018年第3期161-185,共25页 地震研究(英文)
关键词 VLF/LF Propagation Anomaly IONOSPHERIC Perturbations EARTHQUAKE Precursor EARTHQUAKE Prediction the 2016 Kumamoto EARTHQUAKES Japanese VLF/LF Network Wave-Hop Computation NIGHTTIME Fluctuation Method Atmospheric Oscillation Hypothesis VLF/LF Propagation Anomaly Ionospheric Perturbations Earthquake Precursor Earthquake Prediction the 2016 Kumamoto Earthquakes Japanese VLF/LF Network Wave-Hop Computation Nighttime Fluctuation Method Atmospheric Oscillation Hypothesis
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  • 1Al'pert Ya L (1983). The Near Earth and Interplanetary Plasma. Cambridge University Press, Cambridge, 250pp.
  • 2Biagi P F, Castellana L, Maggipinto T, Maggipinto G, Mi- nafra A, Errnini A, Capozzi V, Perna G, Solovieva M, Rozhnoi A, Molchanov O A and Hayalwa M (2007). Decrease in the electric intensity of VLF/LF radio sig- nals and possible connections. Nat Hazards Earth Syst Sci 7:423 -430.
  • 3Biagi P F, Castellana L, Maggipinto T, Maggipinto G, Mi- nafra A, Ermini A, Molchanov O A, Rozhnoi A, Solovie- va M and Hayakawa M (2009). Anomalies in VLF ra- dio signals related to the seismicity during November December 2004: A comparison of ground and satellite results. Phys Chem Earth, Parts A/B/C 34(6-7): 456 - 463.
  • 4Biagi P F, Piccolo R, Castellana L, Maggipinto T, Ermi- ni A, Martellucci S, Bellecci C, Perna G, Capozzi V, Molehanov O A, Hayakawa M and Ohta K (2004). VLF- LF radio signals collected at Bari (South Italy): a prelim- inary analysis on signal anomalies associated with earth- quakes. Nat Hazards Earth Syst Sci 4: 685-689.
  • 5Budden K G (1961). The Radio Waves in the Ionosphere. Cambridge University Press, Cambridge, 524pp.
  • 6Cervone G, Maekawa S, Singh R P, Hayakawa M, Kafatos M and Shvets A (2006). Surface latent heat flux and night- time LF anomalies prior to the Mw=8.3 Tokachi-Oki earthquake. Nat Hazards Earth Syst Sci 6: 109-114.
  • 7Chakrabarti S K, Sasmal S and Chakrabarti S (2009). Iono- spheric anomaly due to seismic activities - Part 2: Evi- dence from D-layer preparation and disappearance times. Nat Hazards Earth Syst Sci 10:1 751 1 757.
  • 8Clilverd M A, Rodger C J and Thomson N R (1999). In- vestigating seismo-ionospheric effects on a long subiono- spheric path. J Geophys Res 104(A12): 28 171 -28 179.
  • 9Dowden R L, Adams C P D, Brundell J B and Dowden P E (1994). Rapid onset, rapid decay (RORD), phase and amplitude perturbations of VLF subionospheric trans- missions, d Atmos Solar-Terr Phys 56:1 513- 1 527.
  • 10Fraser-Smith A C, Bernardi A, McGill P R, Ladd M E, Hel- liwll R A and Villard O G Jr. (1990). Low-frequency magnetic field measurements near the epicenter of the Ms 7.1 Loma Prieta earthquake. Geophys Res Lett 17: 1 465- 1 468.

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